Dept. of Microbiology and Immunology, Weill Cornell Medical College, New York, NY 10065, USA.
Gerstner Sloan Kettering Graduate School of Biomedical Sciences, New York, NY 10065, USA.
Nucleic Acids Res. 2020 May 21;48(9):4811-4826. doi: 10.1093/nar/gkaa212.
The phosphorylation pattern of Pol2 CTD Y1S2P3T4S5P6S7 repeats comprises an informational code coordinating transcription and RNA processing. cis-trans isomerization of CTD prolines expands the scope of the code in ways that are not well understood. Here we address this issue via analysis of fission yeast peptidyl-prolyl isomerase Pin1. A pin1Δ allele that does not affect growth per se is lethal in the absence of cleavage-polyadenylation factor (CPF) subunits Ppn1 and Swd22 and elicits growth defects absent CPF subunits Ctf1 and Dis2 and termination factor Rhn1. Whereas CTD S2A, T4A, and S7A mutants thrive in combination with pin1Δ, a Y1F mutant does not, nor do CTD mutants in which half the Pro3 or Pro6 residues are replaced by alanine. Phosphate-acquisition genes pho1, pho84 and tgp1 are repressed by upstream lncRNAs and are sensitive to changes in lncRNA 3' processing/termination. pin1Δ hyper-represses PHO gene expression and erases the de-repressive effect of CTD-S7A. Transcriptional profiling delineated sets of 56 and 22 protein-coding genes that are down-regulated and up-regulated in pin1Δ cells, respectively, 77% and 100% of which are downregulated/upregulated when the cis-proline-dependent Ssu72 CTD phosphatase is inactivated. Our results implicate Pin1 as a positive effector of 3' processing/termination that acts via Ssu72.
Pol2 CTD Y1S2P3T4S5P6S7 重复序列的磷酸化模式构成了一个信息码,协调转录和 RNA 加工。CTD 脯氨酸的顺反异构化以尚未完全理解的方式扩展了该密码的范围。在这里,我们通过分析裂殖酵母肽基脯氨酰顺反异构酶 Pin1 来解决这个问题。一个本身不会影响生长的 pin1Δ等位基因在没有切割-多聚腺苷酸化因子 (CPF) 亚基 Ppn1 和 Swd22 的情况下是致命的,并且在没有 CPF 亚基 Ctf1 和 Dis2 和终止因子 Rhn1 的情况下会引起生长缺陷。虽然 CTD S2A、T4A 和 S7A 突变体在与 pin1Δ 组合时茁壮成长,但 Y1F 突变体不行,只有一半的 Pro3 或 Pro6 残基被丙氨酸取代的 CTD 突变体也不行。磷酸基团获取基因 pho1、pho84 和 tgp1 被上游 lncRNA 抑制,并且对 lncRNA 3' 加工/终止的变化敏感。pin1Δ 超抑制 PHO 基因表达,并消除了 CTD-S7A 的去抑制作用。转录谱描绘了分别在 pin1Δ 细胞中下调和上调的 56 和 22 个蛋白质编码基因,当顺式脯氨酸依赖性 Ssu72 CTD 磷酸酶失活时,其中 77%和 100%的基因下调/上调。我们的结果表明 Pin1 是 3' 加工/终止的正效应因子,通过 Ssu72 发挥作用。